Arba Minch Water Technology Institute, Arba Minch University, P.O. Box 21, Arba Minch, Ethiopia E-mail:
Department of Hydraulic and Water Resources Engineering, Wolaita Sodo University, P.O. Box 138, Wolaita Sodo, Ethiopia.
Water Sci Technol. 2024 Apr;89(8):2191-2208. doi: 10.2166/wst.2024.103. Epub 2024 Mar 29.
This study aimed to assess spatiotemporal water quality variation and its suitability for irrigation and domestic purposes in Lah River using the irrigation water quality index (IWQI) and the weighted arithmetic water quality index (WAWQI). The IWQI analysis result showed that the sodium absorption ratio, residual sodium carbonate, potential salinity, Kelly index, magnesium ratio, sodium percentage, and permeability index were found to be 1.07 mEq/L, -0.43 mEq/L, 0.8 mEq/L, 0.78 mEq/L, 43.01%, 42.95%, and 63.46%, respectively. The IWQIs revealed that the water quality of the river was appropriate for agricultural use during the dry season. Furthermore, the calculated WAWQI of the river water ranged from 123.13 to 394.72 during the wet season, indicating the high pollution levels in the Lah River and incompatibility for drinking purposes. On the other hand, the principal component analysis identified two pollution sources during the wet season and three during the dry season. In addition, the positive matrix prioritization model predicted the pollution source's contribution quite well with a signal-to-noise ratio of >2 and a residual error between -3 and 3 for both seasons. This study suggests that water quality of Lah River is degrading periodically necessitating proper pollution management.
本研究旨在利用灌溉水质指数(IWQI)和加权算术水质指数(WAWQI)评估拉合尔河的时空水质变化及其用于灌溉和家庭用途的适宜性。IWQI 分析结果表明,钠吸收率、剩余碳酸钠、潜在盐度、凯利指数、镁比、钠百分比和渗透率指数分别为 1.07 mEq/L、-0.43 mEq/L、0.8 mEq/L、0.78 mEq/L、43.01%、42.95%和 63.46%。IWQI 表明,在旱季,河水水质适合农业使用。此外,在雨季,河水的 WAWQI 计算值在 123.13 到 394.72 之间,表明拉合尔河的污染水平很高,不适合饮用。另一方面,主成分分析在雨季识别出两个污染源,在旱季识别出三个污染源。此外,正矩阵优先排序模型对污染来源的贡献预测得相当好,两个季节的信噪比均>2,残差在-3 到 3 之间。本研究表明,拉合尔河的水质正在周期性恶化,需要进行适当的污染管理。